In recent decades, Greenland's peripheral glaciers have experienced large-scale mass loss, resulting in a substantial contribution to sea level rise. While their total area of Greenland ice cover is relatively small (4%), their mass loss is disproportionally large compared to the Greenland ice sheet. Satellite altimetry from Ice, Cloud, and land Elevation Satellite (ICESat) and ICESat-2 shows that mass loss from Greenland's peripheral glaciers increased from 27.2 ± 6.2 Gt/yr (February 2003–October 2009) to 42.3 ± 6.2 Gt/yr (October 2018–December 2021). These relatively small glaciers now constitute 11 ± 2% of Greenland's ice loss and contribute to global sea level rise. In the period October 2018–December 2021, mass loss increased by a fact...
The 13th Symposium on Polar Science/Interdisciplinary sessions [IA] Arctic research, Fri. 18 Nov
In recent decades, the Greenland Ice Sheet has been a major contributor to global sea-level rise1,2,...
We map recent Greenland Ice Sheet elevation change at high spatial (5-km) and temporal (monthly) res...
In recent decades, Greenland's peripheral glaciers have experienced large-scale mass loss, resulting...
In recent decades, Greenland's peripheral glaciers have experienced large-scale mass loss, resulting...
Recently, scientific attention has focused on estimating Greenland\u27s dynamic mass loss through ch...
Glaciers and ice caps peripheral to the main Greenland Ice Sheet contribute markedly to sea-level r...
The Greenland Ice Sheet has been a major contributor to global sea-level rise in recent decades1,2, ...
Greenland's contribution to future sea-level rise remains uncertain and a wide range of upper and lo...
We use satellite and airborne altimetry to estimate annual mass changes of the Greenland Ice Sheet. ...
Understanding the mechanisms that drive the mass imbalance of the Greenland ice sheet (GrIS) is crit...
While global glacier mass balance has decreased rapidly over the last two decades, mass loss has bee...
Mountain glaciers at the periphery of the Greenland ice sheet are a crucial freshwater and sediment ...
This is the publisher's version, also available electronically from "http://onlinelibrary.wiley.com"...
The Greenland Ice Sheet is losing mass at increasing rates. Substantial amounts of this mass loss oc...
The 13th Symposium on Polar Science/Interdisciplinary sessions [IA] Arctic research, Fri. 18 Nov
In recent decades, the Greenland Ice Sheet has been a major contributor to global sea-level rise1,2,...
We map recent Greenland Ice Sheet elevation change at high spatial (5-km) and temporal (monthly) res...
In recent decades, Greenland's peripheral glaciers have experienced large-scale mass loss, resulting...
In recent decades, Greenland's peripheral glaciers have experienced large-scale mass loss, resulting...
Recently, scientific attention has focused on estimating Greenland\u27s dynamic mass loss through ch...
Glaciers and ice caps peripheral to the main Greenland Ice Sheet contribute markedly to sea-level r...
The Greenland Ice Sheet has been a major contributor to global sea-level rise in recent decades1,2, ...
Greenland's contribution to future sea-level rise remains uncertain and a wide range of upper and lo...
We use satellite and airborne altimetry to estimate annual mass changes of the Greenland Ice Sheet. ...
Understanding the mechanisms that drive the mass imbalance of the Greenland ice sheet (GrIS) is crit...
While global glacier mass balance has decreased rapidly over the last two decades, mass loss has bee...
Mountain glaciers at the periphery of the Greenland ice sheet are a crucial freshwater and sediment ...
This is the publisher's version, also available electronically from "http://onlinelibrary.wiley.com"...
The Greenland Ice Sheet is losing mass at increasing rates. Substantial amounts of this mass loss oc...
The 13th Symposium on Polar Science/Interdisciplinary sessions [IA] Arctic research, Fri. 18 Nov
In recent decades, the Greenland Ice Sheet has been a major contributor to global sea-level rise1,2,...
We map recent Greenland Ice Sheet elevation change at high spatial (5-km) and temporal (monthly) res...